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开“窗”结构对环帆伞开伞过程影响 被引量:5
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作者 包文龙 贾贺 +5 位作者 薛晓鹏 黄雪姣 高树义 荣伟 王奇 吴壮志 《航空学报》 EI CAS CSCD 北大核心 2023年第5期171-181,共11页
随着载荷重量的增加,单伞已无法满足大重量返回舱的安全着陆要求,群伞系统获得关注并成功应用。然而,伞间干扰等问题仍困扰着群伞的设计,新一代载人飞船已经考虑从透气性角度对此进行解决。同时,鉴于群伞开伞过程仿真难度较大,在不改变... 随着载荷重量的增加,单伞已无法满足大重量返回舱的安全着陆要求,群伞系统获得关注并成功应用。然而,伞间干扰等问题仍困扰着群伞的设计,新一代载人飞船已经考虑从透气性角度对此进行解决。同时,鉴于群伞开伞过程仿真难度较大,在不改变伞衣构型设计的前提下,采用流固耦合(FSI)方法针对单伞开展不同透气性的环帆伞开伞过程数值模拟,旨在研究开“窗”结构对环帆伞气动性能的影响。结果表明:开“窗”结构对环帆伞开伞过程中的外形变化有较小影响,开“窗”前后的伞衣投影面积与名义面积比变化最大不超过15%;对于不同的开“窗”位置和数量,平衡平均阻力系数、开伞动载系数及阻力系数波动三者的最佳选择为帆5位置和25%数量;采用开“窗”结构后的环帆伞最大摆角至少减小5°,且减小幅度随着开“窗”数量的增加而增大,但与开“窗”位置之间并无明显规律。 展开更多
关键词 环帆伞 开“窗”结构 气动特性 流固耦合 透气性
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Remediation mechanism of“double-resistant”bacteria—Sedum alfredii Hance on Pb-and Cd-contaminated soil
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作者 Tongdong Mo Daihua Jiang +3 位作者 Dingding Shi Shaohui Xu xuejiao huang Zhigang huang 《Ecological Processes》 SCIE EI 2022年第1期78-92,共15页
Background:Concentrations of heavy metals continue to increase in soil environments as a result of both anthro-pogenic activities and natural processes.Cadmium(Cd)and lead(Pb)is one of the most toxic heavy metals and ... Background:Concentrations of heavy metals continue to increase in soil environments as a result of both anthro-pogenic activities and natural processes.Cadmium(Cd)and lead(Pb)is one of the most toxic heavy metals and pose health risks to both humans and the ecosystem.Therefore,effectively solving the problem of heavy metal pollution is the concern of soil workers.Among the existing remediation techniques,only the combined use of microorganisms and plants for remediation of heavy metal-contaminated soil is the greenest and most developed one.Consequently,based on this background,this study investigates the remediation mechanism of Pb and Cd heavy metals using the combined action of bacteria and Sedum alfredii Hance.Methods:In order to enrich the research theory of combined plant and microorganism remediation of heavy metal-contaminated soil,we constructed a heavy metal composite pollution remediation system by combining Pb and Cd-tolerant bacteria with the Pb and Cd hyperaccumulator plant—Sedum alfredii Hance to investigate its combined remediation effect on Pb and Cd composite contaminated soil.Results:The results showed that resistant bacteria were able to promote enrichment of Pb and Cd in Sedum alfredii Hance and J2(200 ml of bacterial solution)was significantly(P<0.05)more effective than J1(100 ml of bacterial solution).The resistant bacteria were able to alleviate the toxic effects of Pb and Cd heavy metals on Sedum alfredii Hance and promote growth while reducing rhizosphere soil pH.The resistant bacteria were able to significantly reduce the effective state of Pb and Cd in the rhizosphere soil(P<0.05),with the greatest reduction in the effective state of Pb in treatment A(Cd7Pb100 mg/kg),where J2 was reduced by 9.98%compared to J0,and the greatest reduction in the effective state of Cd in treatment C(Cd28Pb400 mg/kg),where J2 was 43.53%lower than J0.In addition,the resistant bacteria were able to increase the exchangeable state Cd content by 0.97 to 9.85%.The resistant bacteria had a weakly promoting effect and a highly inhibitory effect on the absorption of Pb by Sedum alfredii Hance.Conclusions:The resistant bacteria can change the rhizosphere environment and significantly improve the remedia-tion effect of Sedum alfredii Hance on heavy metal cadmium.The role of“double-resistant”bacteria in promoting the accumulation of Cd was greater than that of Pb. 展开更多
关键词 “Double-resistant”bacteria Sedum alfredii Hance Lead and cadmium contamination Combined remediation
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